TeLeS improves ASR confidence estimation by considering temporal alignment and lexical errors.
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Vector representations of words have heralded a transformational approach to classical problems in NLP; the most popular example is word2vec. However, a single vector does not suffice to model the polysemous nature of many (frequent) words, i.e., words with multiple meanings. In this paper, we propose a three-fold appr…
SimStock learns stock similarities for better investment management.
Unsupervised learning of time series data, also known as temporal clustering, is a challenging problem in machine learning. Here we propose a novel algorithm, Deep Temporal Clustering (DTC), to naturally integrate dimensionality reduction and temporal clustering into a single end-to-end learning framework, fully unsupe…
Spatio-temporal prediction plays an important role in many application areas especially in traffic domain. However, due to complicated spatio-temporal dependency and high non-linear dynamics in road networks, traffic prediction task is still challenging. Existing works either exhibit heavy training cost or fail to accu…
Evaluating the clinical similarities between pairwise patients is a fundamental problem in healthcare informatics. A proper patient similarity measure enables various downstream applications, such as cohort study and treatment comparative effectiveness research. One major carrier for conducting patient similarity resea…
Recently, self-supervised learning has proved to be effective to learn representations of events suitable for temporal segmentation in image sequences, where events are understood as sets of temporally adjacent images that are semantically perceived as a whole. However, although this approach does not require expensive…
SPINEX improves time series forecasting with explainable neighbors.
A deep learning model for traffic forecasting in telecommunication networks.
Estimates mean of distributed vectors with sparsification and spatial/temporal correlations.
Networks are a fundamental tool for modeling complex systems in a variety of domains including social and communication networks as well as biology and neuroscience. Small subgraph patterns in networks, called network motifs, are crucial to understanding the structure and function of these systems. However, the role of…
Global pairwise network alignment (GPNA) aims to find a one-to-one node mapping between two networks that identifies conserved network regions. GPNA algorithms optimize node conservation (NC) and edge conservation (EC). NC quantifies topological similarity between nodes. Graphlet-based degree vectors (GDVs) are a state…
Two autoencoding models learn latent traffic scene representations.
Paper proposes a novel approach to improve temporal clustering of time series data.
kNN-MTS improves MTS forecasting by using nearest neighbor retrieval over a large dataset.
A new method detects financial fraud using graph transformers.
STCA discovers dynamic functional brain networks using spatial-temporal convolution and attention.
STNN models forecast COVID-19 spread with improved accuracy.
New model extracts shared brain activity patterns from fMRI data.
HYPA-DBGNN detects anomalous sequential patterns in temporal graphs.
Mobile phones can record individual's daily behavioral data as a time-series. In this paper, we present an effective time-series segmentation technique that extracts optimal time segments of individual's similar behavioral characteristics utilizing their mobile phone data. One of the determinants of an individual's beh…
CTGCN learns dynamic graph embeddings preserving both local and global graph structure.
Detects malicious accounts in permissionless blockchains using graph properties and ML.
Proposes DILATE and STRIPE++ for precise time series forecasting.
Generative model for SSc disease trajectories using deep learning.
Functional brain networks exhibit dynamics on the sub-second temporal scale and are often assumed to embody the physiological substrate of cognitive processes. Here we analyse the temporal and spatial dynamics of these states, as measured by EEG, with a hidden Markov model and compare this approach to classical EEG mic…
The paper proposes a deep generative model for complex disease trajectories.
DETECT clusters mobility behaviors from trajectories using deep learning.
A new test detects noise in graph data, useful for forecasting.
Time-aware fact-checking improves veracity predictions for time-sensitive claims.
Taxi demand prediction is an important building block to enabling intelligent transportation systems in a smart city. An accurate prediction model can help the city pre-allocate resources to meet travel demand and to reduce empty taxis on streets which waste energy and worsen the traffic congestion. With the increasing…
ST-MTM models complex time series by decomposing and masking seasonal and trend components.
Study finds common poetic themes across languages over time.
We propose Power Slow Feature Analysis, a gradient-based method to extract temporally slow features from a high-dimensional input stream that varies on a faster time-scale, as a variant of Slow Feature Analysis (SFA) that allows end-to-end training of arbitrary differentiable architectures and thereby significantly ext…
SiBBlInGS discovers interpretable building blocks across states in multi-way data.
Study on eigenvalue distribution of correlated time series deforming the semi-circle law.
This paper proposes a TL method for SOH estimation of lithium-ion batteries.
Reasoning about graphs evolving over time is a challenging concept in many domains, such as bioinformatics, physics, and social networks. We consider a common case in which edges can be short term interactions (e.g., messaging) or long term structural connections (e.g., friendship). In practice, long term edges are oft…
Paper classifies economic states and optimizes portfolios for stagflationary environments.
TD-Flow improves long-term predictions in agent learning.
A new model captures complex event data using attention and Fourier kernels.
In this paper, we propose a new differentiable neural network alignment mechanism for text-dependent speaker verification which uses alignment models to produce a supervector representation of an utterance. Unlike previous works with similar approaches, we do not extract the embedding of an utterance from the mean redu…
Multivariate time series are ubiquitous objects in signal processing. Measuring a distance or similarity between two such objects is of prime interest in a variety of applications, including machine learning, but can be very difficult as soon as the temporal dynamics and the representation of the time series, {\em i.e.…
Recently, a new multi-step temporal learning algorithm, called , unifies -step Tree-Backup (when ) and -step Sarsa (when ) by introducing a sampling parameter . However, similar to other multi-step temporal-difference learning algorithms, needs much memory consumption and computation tim…
The paper studies harmonic map heat flow stability and decay rates.
We study the problem of classifying interval-based temporal sequences (IBTSs). Since common classification algorithms cannot be directly applied to IBTSs, the main challenge is to define a set of features that effectively represents the data such that classifiers can be applied. Most prior work utilizes frequent patter…
Big spatio-temporal datasets, available through both open and administrative data sources, offer significant potential for social science research. The magnitude of the data allows for increased resolution and analysis at individual level. While there are recent advances in forecasting techniques for highly granular te…
Forecasting multivariate time series data, such as prediction of electricity consumption, solar power production, and polyphonic piano pieces, has numerous valuable applications. However, complex and non-linear interdependencies between time steps and series complicate the task. To obtain accurate prediction, it is cru…